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Langevin network model of myosin

  • Benjamin T. Miller
  • , Wenjun Zheng
  • , Richard M. Venable
  • , Richard W. Pastor
  • , Bernard R. Brooks
  • National Institutes of Health

Research output: Contribution to journalArticlepeer-review

17 Scopus citations

Abstract

Langevin mode theory and the coarse-grained elastic network model (ENM) for proteins are combined to yield the Langevin network model (LNM). Hydrodynamic radii of 6 Åwere assigned to each α-carbon on the basis of matching experimental translational and rotational diffusion constants of lysozyme, myoglobin, and hemoglobin with those calculated using a rigid body bead model with hydrodynamic interactions described by the Rotne-Prager tensor. LNM analysis of myosin II indicates that all ENM-like modes are overdamped at water viscosities. The low-frequency LNM modes in the pre-power stroke structure (PDB code: IVOM) are substantially less mixed than the corresponding modes of the post-power stroke structure (1Q5G). Results from a four-bead model of the myosin "lever arm" indicate that coupling between modes increases as the array departs from linearity and are consistent with the results for IVOM and 1Q5G. The decay times for all overdamped Langevin modes are shorter than the calculated rotational tumbling times found for lysozyme and myosin.

Original languageEnglish
Pages (from-to)6274-6281
Number of pages8
JournalJournal of Physical Chemistry B
Volume112
Issue number19
DOIs
StatePublished - May 15 2008

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